Besides the three primary U.S. manufacturers, there are numerous other botulinum toxin producers. Xeomin, manufactured in Germany by Merz, is also available for both therapeutic and cosmetic use in the U.S.[67] Lanzhou Institute of Biological Products in China manufactures a BTX-A product; as of 2014 it was the only BTX-A approved in China.[67] BTX-A is also sold as Lantox and Prosigne on the global market.[68] Neuronox, a BTX-A product, was introduced by Medy-Tox Inc. of South Korea in 2009;[69]
The most common severe adverse reaction associated with the use of BOTOX injection in patients with cervical dystonia is dysp hagia with about 20% of these cases also reporting dyspnea [see WARNINGS AND PRECAUTIONS]. Most dysphagia is reported as mild or moderate in severity. However, it may be associated with more severe signs and symptoms [see WARNINGS AND PRECAUTIONS].
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On April 6, 2016, the company announced it would partner with Heptares Therapeutics in a deal valued up to $3.3 billion to collaborate on the development of a subtype-selective muscarinic agonists for Alzheimer's disease and other major neurological disorders.[21] On April 21, the company announced the acquisition of Topokine Therapeutics for at least $85 million, gaining the phase IIb/III compound XAF5 - a treatment for dermatochalasis.[22] On August 2, the company sold its generic drugs business to Teva Pharmaceutical Industries for $33.4 billion and 100.3 million shares of Teva.[23] On August 11, the company announced the acquisition of ForSight VISION5 for more than $95 million.[24] On September 6, the company acquired RetroSense Therapeutics for more than $60 million, gaining the positive photosensitivity gene therapy treatment, RST-001. RST-001 is to be used in retinas in which rod and cone photoreceptors have degenerated over time, causing in increase in the sensitivity of light hitting the retina.[25] On September 20, the company announced the acquisition of Tobira Therapeutics for $1.695 billion[26] and, a day later, the acquisition of Akarna Therapeutics for $50 million.[27] On October 3, the company sold Anda, its generic drug distribution business, to Teva for $500 million.[28] On October 25, the company acquired Vitae Pharmaceuticals, focused on dermatology treatments, for $639 million.[29] On October 27, the company announced it would acquire Motus Therapeutics, a developer of treatments for gastrointestinal disorders, for $200 million.[30] On November 22, 2016, the company acquired Chase Pharmaceuticals for an upfront payment of $125 million.[31]

It's a remarkable arc for a drug that only a few years ago was associated with Hollywood cocktail parties where guests came for Bellinis and left with a forehead full of Botox injections. It highlights the advances that can occur when physicians, seeking new therapies for their patients, explore creative new uses for approved drugs--basically, real-world experiments that take place largely beyond the reach of federal regulators. That, in turn, raises questions about the risks of deploying medicines in ways that have not been fully vetted. But it happens all the time.


Pharmaceutical companies are not without blame. One reason why insurers impose step therapy is high drug prices. Botox, which is made from the toxin of certain bacteria, is much more expensive than other migraine treatments like beta blockers, which are available as generics. Botox costs about $4,800 a year, but with injection fees, treatment can cost up to $10,000 a year. “They could lower the price,” says Loder. “Their goal is to maximize return on investment for their stockholders. That’s not the same thing as maximizing benefits for patients, unfortunately.”
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Dr. Matarasso says hardly a week goes by when he doesn’t see a patient with a botched Botox job. Why? People are getting it done by unexperienced, often unlicensed, practitioners who don’t know the shape of the face and how to correctly administer the toxin. “I just had a patient come in the other day who went to an ER doctor, and one that went to a psychiatrist,” he says. “They [also] have these Botox parties and I have seen scarring, significant bruising, not only functional, but aesthetic complications.”
According to the PREEMPT injection paradigm, a total of 5 units of onabotulinumtoxinA is injected into each corrugator muscle. To confirm the location of the muscle, the patient is asked to furrow the brow in order to activate the corrugator. Once the muscle has been located, the muscle should be palpated and pinched by holding it between the thumb and index finger. Five units of onabotulinumtoxinA is injected at an approximate 90° angle with the bevel of the needle pointing upward into the medial belly of the muscle. As the needle is inserted, there is skin resistance, which lessens when the muscle is penetrated. This decrease in resistance is termed a muscle pop. Once the muscle pop occurs, inject into the superficial muscle. If the injection is too far superior or above the corrugator muscle, brow ptosis can occur due to depression of the medial brow as the frontalis elevating function is lost and the corrugator depressing function remains unopposed. Whereas weakening the corrugator muscle will cause elevation of the medial eyebrow, alternatively, if the corrugator injection is done too low, then diffusion to the levator palpebral muscle could lead to lid ptosis.
“A younger face has a heart shape, and an older face is a little more bottom-heavy and square,” says Dr. Matarasso. “But if you put toxin in both sides, you are not reducing the movement of the muscle, you are thinning the muscle out a bit. You can restore a youthful look. It’s not as dramatic or quick-acting as other areas, but it can be a nice way to improve the contour of the face.”
The needle should be inserted approximately 2 mm into the detrusor, and 20 injections of 0.5 mL each (total volume of 10 mL) should be spaced approximately 1 cm apart (see Figure 1). For the final injection, approximately 1 mL of sterile normal saline should be injected so that the remaining BOTOX in the needle is delivered to the bladder. After the injections are given, patients shou ld demonstrate their ability to void prior to leaving the clinic. The patient should be obser ved for at least 30 minutes post-injection and until a spontaneous void has occurred.
It is not known whether BOTOX® is safe or effective to treat increased stiffness in upper limb muscles other than those in the elbow, wrist, fingers, and thumb, or in lower limb muscles other than those in the ankle and toes. BOTOX® has not been shown to help people perform task-specific functions with upper limbs or increase movement in joints that are permanently fixed in position by stiff muscles. BOTOX® is not meant to replace existing physical therapy or other rehabilitation that may have been prescribed.
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